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Controlled Biomineralization of Magnetite (Fe(inf3)O(inf4)) and Greigite (Fe(inf3)S(inf4)) in a Magnetotactic Bacterium

机译:趋磁细菌中磁铁矿(Fe(inf3)O(inf4))和钙铁矿(Fe(inf3)S(inf4))的受控生物矿化

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摘要

A slowly moving, rod-shaped magnetotactic bacterium was found in relatively large numbers at and below the oxic-anoxic transition zone of a semianaerobic estuarine basin. Unlike all magnetotactic bacteria described to date, cells of this organism produce single-magnetic-domain particles of an iron oxide, magnetite (Fe(inf3)O(inf4)), and an iron sulfide, greigite (Fe(inf3)S(inf4)), within their magnetosomes. The crystals had different morphologies, being arrowhead or tooth shaped for the magnetite particles and roughly rectangular for the greigite particles, and were coorganized within the same chain(s) in the same cell with their long axes along the chain direction. Because the two crystal types have different crystallochemical characteristics, the findings presented here suggest that the formation of the crystal types is controlled by separate biomineralization processes and that the assembly of the magnetosome chain is controlled by a third ultrastructural process. In addition, our results show that in some magnetotactic bacteria, external environmental conditions such as redox and/or oxygen or hydrogen sulfide concentrations may affect the composition of the nonmetal part of the magnetosome mineral phase.
机译:在半厌氧河口盆地的有氧-缺氧过渡区及以下发现了一种相对缓慢移动的杆状趋磁细菌。与迄今描述的所有趋磁细菌不同,该生物体的细胞产生单磁畴颗粒的氧化铁,磁铁矿(Fe(inf3)O(inf4))和硫化铁,钙铁矿(Fe(inf3)S(inf4 )),在其磁小体内。晶体具有不同的形态,磁铁矿颗粒的形状为箭头或齿形,而钙锌矿颗粒的形状大致为矩形,并且在同一晶胞中的同一条链中的长轴沿链方向排列在一起。因为这两种晶体具有不同的晶体化学特征,所以这里提出的发现表明,晶体类型的形成是由单独的生物矿化过程控制的,而磁小体链的组装是由第三个超微结构过程控制的。此外,我们的结果表明,在某些趋磁细菌中,外部环境条件(例如氧化还原和/或氧气或硫化氢的浓度)可能会影响磁小体矿相的非金属部分的组成。

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